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catheter probe based magnetic sensors for biological applications. To perform quantum sensing, we optically read-out the NV centre's electron spin state to quantify the perturbing effect of nearby
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the optical and quantum properties of innovative materials. Its research focuses on photonics, spin coherence, nanomaterials, perovskites, and quantum phenomena, with applications in optoelectronics and quantum
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entitled “Imaging using Quantum Optical Coherence Tomography”. Where to apply E-mail [email protected] Requirements Research FieldPhysicsEducation LevelMaster Degree or equivalent Skills
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entitled “Imaging using Quantum Optical Coherence Tomography” Where to apply E-mail [email protected] Requirements Research FieldPhysicsEducation LevelMaster Degree or equivalent Skills
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heterostructures under ultra-high vacuum conditions. GNRs are emerging quantum materials whose electronic structure, topology, and spin states can be engineered with atomic precision, but many reactive GNRs degrade
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. This PhD project combines laser optics, precision metrology, electronics, and advanced data analysis in close collaboration with the University of Bonn and an international DFG-funded research unit
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to counter decoherence. We are looking for candidates with a training in atomic and/or quantum physics, optics, or general physics. Experimental and/or instrumental training will be a great addition, as
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insulators and Weyl semimetals. The former favours quantum states of matter (e.g. excitonic superfluidity, quantum magnetism, superconductivity), while the latter makes their optical and transport properties
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telecommunication, quantum and optical computing, AI datacenters, non-intrusive sensing, LiDAR, and intelligent manufacturing are all fast-evolving application fields utilizing integrated photonics, presenting
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properties, including excitonic effects and charge carrier dynamics, in high magnetic fields and under optical/THz excitation. Probe light-induced excitations and their coupling to electronic and excitonic